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Modelling the effect of temperature and time on the performance of a copper electrowinning cell based on reactive electrodialysis

机译:基于反应性电渗析模拟温度和时间对铜电积电池性能的影响

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A temperature- and time-dependent mathematical model for the operation of a laboratory-scale copper electrowinning cell based on reactive electrodialysis (RED) has been developed. The model is zero-dimensional. The cathodic reaction was copper electrodeposition and the anodic reaction was ferrous to ferric ion oxidation. The catholyte was aqueous cupric sulphate and the anolyte was aqueous ferrous sulphate, both in sulphuric acid. Catholyte and anolyte were separated by an electrodialytic anion membrane. The model predicts the effect of temperature and time on: (a) cathodic and anodic kinetics, (b) speciation of catholyte and anolyte, (c) transport phenomena in the electrolytes and (d) ion transport through the membrane. Model calibration and validation were carried out. Its predictions are in good agreement with experiments for: amount of deposited copper, amount of produced Fe(III) species, cell voltage and specific energy consumption. (c) 2007 Elsevier Ltd. All rights reserved.
机译:已经开发了基于温度和时间的数学模型,用于基于反应性电渗析(RED)的实验室规模的铜电解沉积池的运行。该模型是零维的。阴极反应是铜的电沉积,阳极反应是亚铁到三价铁离子的氧化。阴极电解液是硫酸铜水溶液,而阳极电解液是硫酸亚铁水溶液,均在硫酸中。阴极电解质和阳极电解质通过电渗析阴离子膜分离。该模型预测温度和时间对以下方面的影响:(a)阴极和阳极动力学,(b)阴极电解液和阳极电解液的形态,(c)电解质中的传输现象,以及(d)穿过膜的离子传输。进行模型校准和验证。它的预测与以下实验非常吻合:沉积的铜量,产生的Fe(III)种类,电池电压和比能耗。 (c)2007 Elsevier Ltd.保留所有权利。

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